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Liquidstream II—Scalable P2P overlay optimization with adaptive minimal server assistance for stable and efficient video on demand - Springer

机译:Liquidstream II-可伸缩的P2P覆盖优化,具有自适应的最小服务器支持,可实现稳定高效的视频点播-Springer

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摘要

In recent years, a number of research efforts have focused on effective and stable P2P architectures aiming at large scale and low bandwidth cost, real time video streaming systems. Particularly, live streaming and Video-on-Demand (VoD) systems have lately attracted much interest. While many efforts mainly focused on the development of distributed schedulers for content exchange among the participating peers, there are still open fundamental questions regarding the graph (P2P overlay) structure that determines the set of peers with which each peer communicates. Additionally, the way that cloud media servers support these systems is still an open issue. In this paper, we consider a BitTorrent-like VoD system and focus on the following questions: (1) how a distributed-scalable architecture can be formed in a highly heterogeneous and dynamic environment such that it dynamically manages the P2P overlay by means of exploiting the available upload bandwidth of the participating peers, and (2) how a cloud media (bandwidth provider) server reduces the amount of the bandwidth percentage contributed to the system in order to support a larger number of peers. To illustrate the success of our approach, we have developed an extensive P2P VoD simulator for demonstrating the efficiency, scalability and stability of our work under variant and dynamic conditions. Our system guarantees the uninterrupted and efficient video distribution, even in extreme cases of peer arrivals and departures at high rates.
机译:近年来,许多研究工作集中在针对大规模和低带宽成本的实时视频流系统的有效和稳定的P2P体系结构。特别是,实时流媒体和视频点播(VoD)系统近来引起了人们的极大兴趣。尽管许多工作主要集中在开发分布式调度程序以在参与的对等方之间进行内容交换,但是仍然存在关于确定每个对等方通信的对等方集合的图形(P2P覆盖)结构的基本问题。此外,云媒体服务器支持这些系统的方式仍然是一个悬而未决的问题。在本文中,我们考虑类似BitTorrent的VoD系统,并关注以下问题:(1)如何在高度异构和动态的环境中形成分布式可伸缩体系结构,使其能够通过利用漏洞动态管理P2P覆盖参与对等方的可用上传带宽,以及(2)云媒体(带宽提供者)服务器如何减少为系统贡献的带宽百分比,以支持更多对等方。为了说明我们的方法的成功,我们开发了一个广泛的P2P VoD模拟器,以演示在可变和动态条件下我们工作的效率,可伸缩性和稳定性。我们的系统即使在极端情况下以高速率到达和离开同行的情况下,也可以确保不间断且高效的视频分发。

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